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There are 30120 results for: content related to: Carbon Dioxide and Polar Cooling in the Miocene: The Monterey Hypothesis

  1. Geological Perspectives on Carbon Dioxide and the Carbon Cycle

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    E.T. Sundquist, W.S. Broecker, Pages: 55–59, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0005

  2. Distribution of Major Vegetational Types During the Tertiary

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    E.T. Sundquist, W.S. Broecker, Pages: 357–375, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0357

  3. Chert spheroids of the Monterey Formation, California (USA): early-diagenetic structures of bedded siliceous deposits

    Sedimentology

    Volume 58, Issue 2, February 2011, Pages: 325–351, RICHARD J. BEHL

    Version of Record online : 18 MAY 2010, DOI: 10.1111/j.1365-3091.2010.01165.x

  4. Field Trip Guide to the Miocene Monterey Formation, Salinas and Santa Barbara Areas, California

    Mesozoic and Cenozoic Siliceous Sediments of California: San Francisco to Los Angeles, California, July 3-7, 1989

    Joyce Blueford, Caroline Isaacs, Bonnie Murchey, John Barron, Pages: 21–50, 2013

    Published Online : 22 MAR 2013, DOI: 10.1029/FT109p0021

  5. Charcoal Fluxes into Sediments of the North Pacific Ocean: The Cenozoic Record of Burning

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    E.T. Sundquist, W.S. Broecker, Pages: 419–442, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0419

  6. Sediment Diagenesis in Western Pacific Basins

    Active Margins and Marginal Basins of the Western Pacific

    Marta E. Torres, Kathleen M. Marsaglia, Jonathan B. Martin, Richard W. Murray, Pages: 241–258, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM088p0241

  7. Oligocene to Miocene Carbon Isotope Cycles and Abyssal Circulation Changes

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    Kenneth G. Miller, Richard G. Fairbanks, Pages: 469–486, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0469

  8. Glacial to Interglacial Changes in Atmospheric Carbon Dioxide: The Critical Role of Ocean Surface Water in High Latitudes

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    J. R. Toggweiler, J. L. Sarmiento, Pages: 163–184, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0163

  9. Diagenetic trends in the siliceous facies of the Monterey Shale in the Santa Maria region, California

    Sedimentology

    Volume 28, Issue 4, August 1981, Pages: 547–571, KENNETH A. PISCIOTTO

    Version of Record online : 14 JUN 2006, DOI: 10.1111/j.1365-3091.1981.tb01701.x

  10. Variations in the Global Carbon Cycle During the Cretaceous Related to Climate, Volcanism, and Changes in Atmospheric CO2

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    M. A. Arthur, W. E. Dean, S. O. Schlanger, Pages: 504–529, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0504

  11. The Himalayas, organic carbon burial, and climate in the Miocene

    Paleoceanography

    Volume 9, Issue 3, June 1994, Pages: 399–404, M. E. Raymo

    Version of Record online : 4 MAY 2010, DOI: 10.1029/94PA00289

  12. Recrystallization of dolomite: evidence from the Monterey Formation (Miocene), California

    Sedimentology

    Volume 41, Issue 6, December 1994, Pages: 1223–1239, MITCHELL J. MALONE, PAUL A. BAKER and STEPHEN J. BURNS

    Version of Record online : 14 JUN 2006, DOI: 10.1111/j.1365-3091.1994.tb01450.x

  13. Simulation Experiments with Late Quaternary Carbon Storage in Mid-Latitude Forest Communities

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    Allen M. Solomon, M. Lynn Tharp, Pages: 235–250, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0235

  14. Changes in Calcium Carbonate Accumulation in the Equatorial Pacific During the Late Cenozoic: Evidence from HPC Site 572

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    Nicklas G. Pisias, Warren L. Prell, Pages: 443–454, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0443

  15. Petroleum geology of the Monterey Formation in the Santa Maria and Santa Barbara Coastal and Offshore Areas

    Oil in the Monterey California Formation Los Angeles to Santa Maria, California July 20-24, 1989

    Thomas MacKinnon, J. W. Randall, Robert E. Garrison, Pages: 11–27, 2013

    Published Online : 17 MAR 2013, DOI: 10.1029/FT311p0011

  16. Cenozoic Fluctuations in Biotic Parts of the Global Carbon Cycle

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    E.T. Sundquist, W.S. Broecker, Pages: 377–396, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0377

  17. Carbon Deposition Rates and Deep Water Residence Time in the Equatorial Atlantic Ocean Throughout the Last 160,000 Years

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    W. B. Curry, G. P. Lohmann, Pages: 285–301, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0285

  18. Carbonate Preservation and Rates of Climatic Change: An 800 KYR Record from the Indian Ocean

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    L. C. Peterson, W. L. Prell, Pages: 251–269, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0251

  19. Simple shear of southern California during Neogene time suggested by paleomagnetic declinations

    Journal of Geophysical Research: Solid Earth (1978–2012)

    Volume 90, Issue B14, 10 December 1985, Pages: 12454–12466, Bruce P. Luyendyk, Marc J. Kamerling, Richard R. Terres, J. Scott Hornafius

    Version of Record online : 20 SEP 2012, DOI: 10.1029/JB090iB14p12454

  20. Carbon Isotope Variations in Surface Waters of the Gulf of Mexico on Time Scales of 10,000, 30,000, 150,000 and 2 Million Years

    The Carbon Cycle and Atmospheric CO: Natural Variations Archean to Present

    E.T. Sundquist, W.S. Broecker, Pages: 329–341, 2013

    Published Online : 18 MAR 2013, DOI: 10.1029/GM032p0329